Legacy Circuit Mockups
A skill for creating breadboard circuit mockups and visual diagrams for retro computing and electronics projects. This skill leverages HTML5 Canvas drawing mechanisms to render interactive circuit layouts featuring vintage components like the 6502 microprocessor, 555 timer ICs, EEPROMs, and 7400-series logic gates.
When to Use This Skill
- User asks to "create a breadboard layout" or "mockup a circuit"
- User wants to visualize component placement on a breadboard
- User needs a visual reference for building a 6502 computer
- User asks to "draw a circuit" or "diagram electronics"
- User wants to create educational electronics visuals
- User mentions Ben Eater tutorials or retro computing projects
- User asks to mockup 555 timer circuits or LED projects
- User needs to visualize wire connections between components
Prerequisites
- Understanding of component pinouts from bundled reference files
- Knowledge of breadboard layout conventions (rows, columns, power rails)
Supported Components
Microprocessors & Memory
| Component |
Pins |
Description |
| W65C02S |
40-pin DIP |
8-bit microprocessor with 16-bit address bus |
| 28C256 |
28-pin DIP |
32KB parallel EEPROM |
| W65C22 |
40-pin DIP |
Versatile Interface Adapter (VIA) |
| 62256 |
28-pin DIP |
32KB static RAM |
Logic & Timer ICs
| Component |
Pins |
Description |
| NE555 |
8-pin DIP |
Timer IC for timing and oscillation |
| 7400 |
14-pin DIP |
Quad 2-input NAND gate |
| 7402 |
14-pin DIP |
Quad 2-input NOR gate |
| 7404 |
14-pin DIP |
Hex inverter (NOT gate) |
| 7408 |
14-pin DIP |
Quad 2-input AND gate |
| 7432 |
14-pin DIP |
Quad 2-input OR gate |
Passive & Active Components
| Component |
Description |
| LED |
Light emitting diode (various colors) |
| Resistor |
Current limiting (configurable values) |
| Capacitor |
Filtering and timing (ceramic/electrolytic) |
| Crystal |
Clock oscillator |
| Switch |
Toggle switch (latching) |
| Button |
Momentary push button |
| Potentiometer |
Variable resistor |
| Photoresistor |
Light-dependent resistor |
Grid System
// Standard breadboard grid: 20px spacing
const gridSize = 20;
const cellX = Math.floor(x / gridSize) * gridSize;
const cellY = Math.floor(y / gridSize) * gridSize;
Component Rendering Pattern
// All components follow this structure:
{
type: 'component-type',
x: gridX,
y: gridY,
width: componentWidth,
height: componentHeight,
rotation: 0, // 0, 90, 180, 270
properties: { /* component-specific data */ }
}
Wire Connections
// Wire connection format:
{
start: { x: startX, y: startY },
end: { x: endX, y: endY },
color: '#ff0000' // Wire color coding
}
Step-by-Step Workflows
Creating a Basic LED Circuit Mockup
- Define breadboard dimensions and grid
- Place power rail connections (+5V and GND)
- Add LED component with anode/cathode orientation
- Place current-limiting resistor
- Draw wire connections between components
- Add labels and annotations
Creating a 555 Timer Circuit
- Place NE555 IC on breadboard (pins 1-4 left, 5-8 right)
- Connect pin 1 (GND) to ground rail
- Connect pin 8 (Vcc) to power rail
- Add timing resistors and capacitors
- Wire trigger and threshold connections
- Connect output to LED or other load
Creating a 6502 Microprocessor Layout
- Place W65C02S centered on breadboard
- Add 28C256 EEPROM for program storage
- Place W65C22 VIA for I/O
- Add 7400-series logic for address decoding
- Wire address bus (A0-A15)
- Wire data bus (D0-D7)
- Connect control signals (R/W, PHI2, RESB)
- Add reset button and clock crystal
Component Pinout Quick Reference
555 Timer (8-pin DIP)
| Pin |
Name |
Function |
| 1 |
GND |
Ground (0V) |
| 2 |
TRIG |
Trigger (< 1/3 Vcc starts timing) |
| 3 |
OUT |
Output (source/sink 200mA) |
| 4 |
RESET |
Active-low reset |
| 5 |
CTRL |
Control voltage (bypass with 10nF) |
| 6 |
THR |
Threshold (> 2/3 Vcc resets) |
| 7 |
DIS |
Discharge (open collector) |
| 8 |
Vcc |
Supply (+4.5V to +16V) |
W65C02S (40-pin DIP) - Key Pins
| Pin |
Name |
Function |
| 8 |
VDD |
Power supply |
| 21 |
VSS |
Ground |
| 37 |
PHI2 |
System clock input |
| 40 |
RESB |
Active-low reset |
| 34 |
RWB |
Read/Write signal |
| 9-25 |
A0-A15 |
Address bus |
| 26-33 |
D0-D7 |
Data bus |
28C256 EEPROM (28-pin DIP) - Key Pins
| Pin |
Name |
Function |
| 14 |
GND |
Ground |
| 28 |
VCC |
Power supply |
| 20 |
CE |
Chip enable (active-low) |
| 22 |
OE |
Output enable (active-low) |
| 27 |
WE |
Write enable (active-low) |
| 1-10, 21-26 |
A0-A14 |
Address inputs |
| 11-19 |
I/O0-I/O7 |
Data bus |
Formulas Reference
Resistor Calculations
- Ohm's Law: V = I × R
- LED Current: R = (Vcc - Vled) / Iled
- Power: P = V × I = I² × R
555 Timer Formulas
Astable Mode:
- Frequency: f = 1.44 / ((R1 + 2×R2) × C)
- High time: t₁ = 0.693 × (R1 + R2) × C
- Low time: t₂ = 0.693 × R2 × C
- Duty cycle: D = (R1 + R2) / (R1 + 2×R2) × 100%
Monostable Mode:
- Pulse width: T = 1.1 × R × C
Capacitor Calculations
- Capacitive reactance: Xc = 1 / (2πfC)
- Energy stored: E = ½ × C × V²
Color Coding Conventions
Wire Colors
| Color |
Purpose |
| Red |
+5V / Power |
| Black |
Ground |
| Yellow |
Clock / Timing |
| Blue |
Address bus |
| Green |
Data bus |
| Orange |
Control signals |
| White |
General purpose |
LED Colors
| Color |
Forward Voltage |
| Red |
1.8V - 2.2V |
| Green |
2.0V - 2.2V |
| Yellow |
2.0V - 2.2V |
| Blue |
3.0V - 3.5V |
| White |
3.0V - 3.5V |
Build Examples
Build 1 — Single LED
Components: Red LED, 220Ω resistor, jumper wires, power source
Steps:
- Insert black jumper wire from power GND to row A5
- Insert red jumper wire from power +5V to row J5
- Place LED with cathode (short leg) in row aligned with GND
- Place 220Ω resistor between power and LED anode
Build 2 — 555 Astable Blinker
Components: NE555, LED, resistors (10kΩ, 100kΩ), capacitor (10µF)
Steps:
- Place 555 IC straddling center channel
- Connect pin 1 to GND, pin 8 to +5V
- Connect pin 4 to pin 8 (disable reset)
- Wire 10kΩ between pin 7 and +5V
- Wire 100kΩ between pins 6 and 7
- Wire 10µF between pin 6 and GND
- Connect pin 3 (output) to LED circuit
Troubleshooting
| Issue |
Solution |
| LED doesn't light |
Check polarity (anode to +, cathode to -) |
| Circuit doesn't power |
Verify power rail connections |
| IC not working |
Check VCC and GND pin connections |
| 555 not oscillating |
Verify threshold/trigger capacitor wiring |
| Microprocessor stuck |
Check RESB is HIGH after reset pulse |
References
Detailed component specifications are available in the bundled reference files:
- 555.md - Complete 555 timer IC specification
- 6502.md - MOS 6502 microprocessor details
- 6522.md - W65C22 VIA interface adapter
- 28256-eeprom.md - AT28C256 EEPROM specification
- 6C62256.md - 62256 SRAM details
- 7400-series.md - TTL logic gate pinouts
- assembly-compiler.md - Assembly compiler specification
- assembly-language.md - Assembly language specification
- basic-electronic-components.md - Resistors, capacitors, switches
- breadboard.md - Breadboard specifications
- common-breadboard-components.md - Comprehensive component reference
- connecting-electronic-components.md - Step-by-step build guides
- emulator-28256-eeprom.md - Emulating 28256-eeprom specification
- emulator-6502.md - Emulating 6502 specification
- emulator-6522.md - Emulating 6522 specification
- emulator-6C62256.md - Emulating 6C62256 specification
- emulator-lcd.md - Emulating a LCD specification
- lcd.md - LCD display interfacing
- minipro.md - EEPROM programmer usage
- t48eeprom-programmer.md - T48 programmer reference
Source: github/awesome-copilot → skills/legacy-circuit-mockups/SKILL.md
1---2name: legacy-circuit-mockups3description: Generate breadboard circuit mockups and visual diagrams using HTML5 Canvas drawing techniques. Use when asked to create circuit layouts, visualize electronic component placements, draw breadboard diagrams, mockup 6502 builds, generate retro computer schematics, or design vintage electronics projects. Supports 555 timers, W65C02S microprocessors, 28C256 EEPROMs, W65C22 VIA chips, 7400-series logic gates, LEDs, resistors, capacitors, switches, buttons, crystals, and wires.4---5# Legacy Circuit Mockups67A skill for creating breadboard circuit mockups and visual diagrams for retro computing and electronics projects. This skill leverages HTML5 Canvas drawing mechanisms to render interactive circuit layouts featuring vintage components like the 6502 microprocessor, 555 timer ICs, EEPROMs, and 7400-series logic gates.89## When to Use This Skill1011- User asks to "create a breadboard layout" or "mockup a circuit"12- User wants to visualize component placement on a breadboard13- User needs a visual reference for building a 6502 computer14- User asks to "draw a circuit" or "diagram electronics"15- User wants to create educational electronics visuals16- User mentions Ben Eater tutorials or retro computing projects17- User asks to mockup 555 timer circuits or LED projects18- User needs to visualize wire connections between components1920## Prerequisites2122- Understanding of component pinouts from bundled reference files23- Knowledge of breadboard layout conventions (rows, columns, power rails)2425## Supported Components2627### Microprocessors & Memory2829| Component | Pins | Description |30|-----------|------|-------------|31| W65C02S | 40-pin DIP | 8-bit microprocessor with 16-bit address bus |32| 28C256 | 28-pin DIP | 32KB parallel EEPROM |33| W65C22 | 40-pin DIP | Versatile Interface Adapter (VIA) |34| 62256 | 28-pin DIP | 32KB static RAM |3536### Logic & Timer ICs3738| Component | Pins | Description |39|-----------|------|-------------|40| NE555 | 8-pin DIP | Timer IC for timing and oscillation |41| 7400 | 14-pin DIP | Quad 2-input NAND gate |42| 7402 | 14-pin DIP | Quad 2-input NOR gate |43| 7404 | 14-pin DIP | Hex inverter (NOT gate) |44| 7408 | 14-pin DIP | Quad 2-input AND gate |45| 7432 | 14-pin DIP | Quad 2-input OR gate |4647### Passive & Active Components4849| Component | Description |50|-----------|-------------|51| LED | Light emitting diode (various colors) |52| Resistor | Current limiting (configurable values) |53| Capacitor | Filtering and timing (ceramic/electrolytic) |54| Crystal | Clock oscillator |55| Switch | Toggle switch (latching) |56| Button | Momentary push button |57| Potentiometer | Variable resistor |58| Photoresistor | Light-dependent resistor |5960### Grid System6162```javascript63// Standard breadboard grid: 20px spacing64const gridSize = 20;65const cellX = Math.floor(x / gridSize) * gridSize;66const cellY = Math.floor(y / gridSize) * gridSize;67```6869### Component Rendering Pattern7071```javascript72// All components follow this structure:73{74 type: 'component-type',75 x: gridX,76 y: gridY,77 width: componentWidth,78 height: componentHeight,79 rotation: 0, // 0, 90, 180, 27080 properties: { /* component-specific data */ }81}82```8384### Wire Connections8586```javascript87// Wire connection format:88{89 start: { x: startX, y: startY },90 end: { x: endX, y: endY },91 color: '#ff0000' // Wire color coding92}93```9495## Step-by-Step Workflows9697### Creating a Basic LED Circuit Mockup98991. Define breadboard dimensions and grid1002. Place power rail connections (+5V and GND)1013. Add LED component with anode/cathode orientation1024. Place current-limiting resistor1035. Draw wire connections between components1046. Add labels and annotations105106### Creating a 555 Timer Circuit1071081. Place NE555 IC on breadboard (pins 1-4 left, 5-8 right)1092. Connect pin 1 (GND) to ground rail1103. Connect pin 8 (Vcc) to power rail1114. Add timing resistors and capacitors1125. Wire trigger and threshold connections1136. Connect output to LED or other load114115### Creating a 6502 Microprocessor Layout1161171. Place W65C02S centered on breadboard1182. Add 28C256 EEPROM for program storage1193. Place W65C22 VIA for I/O1204. Add 7400-series logic for address decoding1215. Wire address bus (A0-A15)1226. Wire data bus (D0-D7)1237. Connect control signals (R/W, PHI2, RESB)1248. Add reset button and clock crystal125126## Component Pinout Quick Reference127128### 555 Timer (8-pin DIP)129130| Pin | Name | Function |131|:---:|:-----|:---------|132| 1 | GND | Ground (0V) |133| 2 | TRIG | Trigger (< 1/3 Vcc starts timing) |134| 3 | OUT | Output (source/sink 200mA) |135| 4 | RESET | Active-low reset |136| 5 | CTRL | Control voltage (bypass with 10nF) |137| 6 | THR | Threshold (> 2/3 Vcc resets) |138| 7 | DIS | Discharge (open collector) |139| 8 | Vcc | Supply (+4.5V to +16V) |140141### W65C02S (40-pin DIP) - Key Pins142143| Pin | Name | Function |144|:---:|:-----|:---------|145| 8 | VDD | Power supply |146| 21 | VSS | Ground |147| 37 | PHI2 | System clock input |148| 40 | RESB | Active-low reset |149| 34 | RWB | Read/Write signal |150| 9-25 | A0-A15 | Address bus |151| 26-33 | D0-D7 | Data bus |152153### 28C256 EEPROM (28-pin DIP) - Key Pins154155| Pin | Name | Function |156|:---:|:-----|:---------|157| 14 | GND | Ground |158| 28 | VCC | Power supply |159| 20 | CE | Chip enable (active-low) |160| 22 | OE | Output enable (active-low) |161| 27 | WE | Write enable (active-low) |162| 1-10, 21-26 | A0-A14 | Address inputs |163| 11-19 | I/O0-I/O7 | Data bus |164165## Formulas Reference166167### Resistor Calculations168169- **Ohm's Law:** V = I × R170- **LED Current:** R = (Vcc - Vled) / Iled171- **Power:** P = V × I = I² × R172173### 555 Timer Formulas174175**Astable Mode:**176177- Frequency: f = 1.44 / ((R1 + 2×R2) × C)178- High time: t₁ = 0.693 × (R1 + R2) × C179- Low time: t₂ = 0.693 × R2 × C180- Duty cycle: D = (R1 + R2) / (R1 + 2×R2) × 100%181182**Monostable Mode:**183184- Pulse width: T = 1.1 × R × C185186### Capacitor Calculations187188- Capacitive reactance: Xc = 1 / (2πfC)189- Energy stored: E = ½ × C × V²190191## Color Coding Conventions192193### Wire Colors194195| Color | Purpose |196|-------|---------|197| Red | +5V / Power |198| Black | Ground |199| Yellow | Clock / Timing |200| Blue | Address bus |201| Green | Data bus |202| Orange | Control signals |203| White | General purpose |204205### LED Colors206207| Color | Forward Voltage |208|-------|-----------------|209| Red | 1.8V - 2.2V |210| Green | 2.0V - 2.2V |211| Yellow | 2.0V - 2.2V |212| Blue | 3.0V - 3.5V |213| White | 3.0V - 3.5V |214215## Build Examples216217### Build 1 — Single LED218219**Components:** Red LED, 220Ω resistor, jumper wires, power source220221**Steps:**2222231. Insert black jumper wire from power GND to row A52242. Insert red jumper wire from power +5V to row J52253. Place LED with cathode (short leg) in row aligned with GND2264. Place 220Ω resistor between power and LED anode227228### Build 2 — 555 Astable Blinker229230**Components:** NE555, LED, resistors (10kΩ, 100kΩ), capacitor (10µF)231232**Steps:**2332341. Place 555 IC straddling center channel2352. Connect pin 1 to GND, pin 8 to +5V2363. Connect pin 4 to pin 8 (disable reset)2374. Wire 10kΩ between pin 7 and +5V2385. Wire 100kΩ between pins 6 and 72396. Wire 10µF between pin 6 and GND2407. Connect pin 3 (output) to LED circuit241242## Troubleshooting243244| Issue | Solution |245|-------|----------|246| LED doesn't light | Check polarity (anode to +, cathode to -) |247| Circuit doesn't power | Verify power rail connections |248| IC not working | Check VCC and GND pin connections |249| 555 not oscillating | Verify threshold/trigger capacitor wiring |250| Microprocessor stuck | Check RESB is HIGH after reset pulse |251252## References253254Detailed component specifications are available in the bundled reference files:255256- [555.md](references/555.md) - Complete 555 timer IC specification257- [6502.md](references/6502.md) - MOS 6502 microprocessor details258- [6522.md](references/6522.md) - W65C22 VIA interface adapter259- [28256-eeprom.md](references/28256-eeprom.md) - AT28C256 EEPROM specification260- [6C62256.md](references/6C62256.md) - 62256 SRAM details261- [7400-series.md](references/7400-series.md) - TTL logic gate pinouts262- [assembly-compiler.md](references/assembly-compiler.md) - Assembly compiler specification263- [assembly-language.md](references/assembly-language.md) - Assembly language specification264- [basic-electronic-components.md](references/basic-electronic-components.md) - Resistors, capacitors, switches265- [breadboard.md](references/breadboard.md) - Breadboard specifications266- [common-breadboard-components.md](references/common-breadboard-components.md) - Comprehensive component reference267- [connecting-electronic-components.md](references/connecting-electronic-components.md) - Step-by-step build guides268- [emulator-28256-eeprom.md](references/emulator-28256-eeprom.md) - Emulating 28256-eeprom specification269- [emulator-6502.md](references/emulator-6502.md) - Emulating 6502 specification270- [emulator-6522.md](references/emulator-6522.md) - Emulating 6522 specification271- [emulator-6C62256.md](references/emulator-6C62256.md) - Emulating 6C62256 specification272- [emulator-lcd.md](references/emulator-lcd.md) - Emulating a LCD specification273- [lcd.md](references/lcd.md) - LCD display interfacing274- [minipro.md](references/minipro.md) - EEPROM programmer usage275- [t48eeprom-programmer.md](references/t48eeprom-programmer.md) - T48 programmer reference276277---278279**Source:** [`github/awesome-copilot`](https://github.com/github/awesome-copilot) → `skills/legacy-circuit-mockups/SKILL.md`